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FE analysis of a PZT-actuated adaptive beam with vibration damping using a parallel R-L shunt circuit

机译:使用并联R-L分流电路对具有减振功能的PZT驱动自适应梁进行有限元分析

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This paper presents the simulation of adaptive structures with shunt circuits via the finite element method (FEM). The experiment configuration consists in an aluminium cantilever beam actuated by a PZT patch, whose flexural vibration is transmitted to a collocated PZT sensor, which is connected to a parallel R-L shunt circuit damping the vibration. First, starting from the piezoelectric constitutive equations, analytical formulations using FEM are defined for the actuator/beam/sensor vibrating system. Together with the corresponding sensor compliance, the connected shunt circuit is implicitly represented through an equivalent electrical load impedance. Optimal tuned values of the resistor and inductor for the shunt circuit are calculated at selected harmonic resonance vibration frequencies, and further related FE data input and boundary conditions are developed. Extensive numerical results are then obtained in using the FEM code ANSYS Multiphysics, which has piezoelectric coupling capabilities as well as electric finite elements to be used in the R-L circuit simulation. Calculated reduction levels of the beam vibration amplitude, due to the shunt circuit with optimal tuned R-L values, attain high values. Finally, an alternative method to simulating implicitly the R-L circuit consists in applying a shunt-equivalent voltage input as supplementary boundary condition to the sensor. In this method, numerical results are obtained by using the FEM code FEMLAB, with its ability of data transfer into the MATLAB script.
机译:本文通过有限元方法(FEM)提出了带有并联电路的自适应结构的仿真。实验配置包括一个由PZT贴片驱动的铝悬臂梁,其弯曲振动被传输到并置的PZT传感器,该传感器与并联的R-L并联电路相连以衰减振动。首先,从压电本构方程出发,为致动器/梁/传感器振动系统定义了使用FEM的分析公式。连同相应的传感器一致性,通过等效的电气负载阻抗隐式表示连接的并联电路。在选定的谐波谐振振动频率下计算分流电路的电阻和电感的最佳调谐值,并进一步开发相关的FE数据输入和边界条件。然后使用FEM代码ANSYS Multiphysics获得了广泛的数值结果,该软件具有压电耦合功能以及在R-L电路仿真中使用的电有限元。由于具有最佳调谐R-L值的并联电路,计算得出的梁振动振幅的减小水平达到了很高的值。最后,一种隐式地模拟R-L电路的替代方法包括将作为等效边界条件的并联等效电压输入施加到传感器。在这种方法中,使用FEM代码FEMLAB可获得数值结果,并且其能够将数据传输到MATLAB脚本中。

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